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Flame Front Deformation Instabilities of Filtration Combustion for Initial Thermal Perturbation
Authors:Yongfang Xia  Lu Chen  Junrui Shi  Benwen Li
Affiliation:1. Anhui Jianzhu University, School of Environment and Energy Engineering, 292?Ziyun Road, 230009 Hefei, China;2. Dalian University of Technology, School of Energy and Power Engineering, 2?Linggong Road, 116024 Dalian, China;3. Shandong University of Technology, School of Transportation and Vehicle Engineering, 266?Xincun West Road, 255000 Zibo, China
Abstract:The flame front deformation instability of low-velocity filtration combustion within an inert packed bed is studied based on the initial preheating non-uniformity. Based on the experimental phenomena, an initial thermal perturbation model is numerically proposed so as to predict the deformation behaviors of the flame front instabilities. The numerical prediction indicates that the assumption of an initial thermal perturbation is a feasible explanation as the cause of the flame front inclination instability. As the initial thermal perturbation increases, the phenomena of the flame front break and shrinking instabilities could easily occur at high filtration velocity or low equivalence ratio. Moreover, the evolutions of the flame front break rate and the shrinking rate are quantitatively analyzed.
Keywords:Filtration gas combustion  Flame front deformation  Initial thermal perturbation  Porous media
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